High voltage electrolyte additives
Described herein are additives for use in electrolytes that provide a number of desirable characteristics when implemented within batteries, such as high capacity retention during battery cycling at high temperatures. In some embodiments, a high voltage electrolyte includes a base electrolyte and one or more vinylsilane or fluorosilane additives, which impart these desirable performance characteristics.
1. A lithium ion battery, comprising:
an anode;
a cathode represented by the formula LiNi a Mn b Co c O d , wherein 0.5≤a<1, 0<b<0.5, 0<c<0.5, a+b+c=1, and 0<d≤2; and
a liquid electrolyte comprising a lithium salt, a solvent, and an additive, wherein the additive is tetravinylsilane, represented by Formula (A), and a concentration of the tetravinylsilane is at least 1 weight percent of a total weight of the liquid electrolyte:
wherein tetravinylsilane is the only additive present in the liquid electrolyte, and the liquid electrolyte is free of fluorinated carbonates.
2. The lithium ion battery of claim 1 , wherein the cathode is represented by the formula LiNi 0.6 Mn 0.2 Co 0.2 O 2 .
3. The lithium ion battery of claim 1 , wherein the cathode is represented by the formula LiNi 0.8 Mn 0.1 Co 0.1 O 2 .
4. The lithium ion battery of claim 1 , wherein the cathode is represented by the formula LiNi 0.5 Mn 0.3 Co 0.2 O 2 .
5. The lithium ion battery of claim 1 , wherein a rated charge voltage of the battery is greater than 4.4 V.
6. The lithium ion battery of claim 1 , wherein a concentration of the tetravinylsilane is less than 2 weight percent of a total weight of the liquid electrolyte.
7. The lithium ion battery of claim 1 , wherein the concentration of the tetravinylsilane is at least 2 weight percent of the total weight of the liquid electrolyte.
8. A lithium ion battery, comprising:
an anode;
a cathode represented by the formula LiNi a Mn b Co c O d , wherein 0.5≤a<1, 0<b<0.5, 0<c<0.5, a+b+c=1, and 0<d≤2; and
a liquid electrolyte comprising a lithium salt, a solvent, and an additive, wherein the additive is tetraallylsilane, represented by Formula (B), and a concentration of the tetraallylsilane is at least 1 weight percent of a total weight of the liquid electrolyte:
wherein tetraallylsilane is the only additive present in the liquid electrolyte, and the liquid electrolyte is free of fluorinated carbonates.
9. The lithium ion battery of claim 8 , wherein the cathode is represented by one of the formula LiNi 0.5 Mn 0.3 Co 0.2 O 2 , the formula LiNi 0.6 Mn 0.2 Co 0.2 O 2 , or the formula LiNi 0.8 Mn 0.1 Co 0.1 O 2 .
10. The lithium ion battery of claim 8 , wherein the concentration of the tetraallylsilane is at least 2 weight percent of the total weight of the liquid electrolyte.
11. A lithium ion battery, comprising:
an anode;
a cathode represented by the formula LiNi a Co b Al c O 2 , wherein 0.5≤a<1, 0<b<0.5, 0<c<0.5, and a+b+c=1; and
a liquid electrolyte comprising a lithium salt, a solvent, and an additive, wherein the additive is tetravinylsilane, represented by Formula (A), and a concentration of the tetravinylsilane is at least 1 weight percent of a total weight of the liquid electrolyte:
wherein tetravinylsilane is the only additive present in the liquid electrolyte, and the liquid electrolyte is free of fluorinated carbonates.
12. The lithium ion battery of claim 11 , wherein the cathode is represented by the formula LiNi 0.8 Co 0.15 Al 0.05 O 2 .
13. The lithium ion battery of claim 11 , wherein a rated charge voltage of the battery is greater than 4.4 V.
14. The lithium ion battery of claim 11 , wherein the concentration of the tetravinylsilane is at least 2 weight percent of the total weight of the liquid electrolyte.